Gatisheel is an IoT-, SCADA- and AI-enabled platform for monitoring, automating and optimizing water infrastructure. It links water-flow and energy data to support efficient pumping, fault detection, remote operations and resource conservation.
Gatisheel is an IoT-, SCADA- and cloud-based platform for automating and remotely managing water infrastructure. It connects pumps, valves, flow meters, level and pressure sensors, energy meters, and existing PLC or automation systems to a centralized web and mobile platform.
The system provides real-time monitoring, remote operation, automated scheduling and control, fault alerts, historical reporting and performance dashboards. Its control logic and predictive or AI-assisted analytics help operators identify abnormal conditions, inefficient operations and potential maintenance requirements.
By correlating water flow with electricity consumption, the platform enables operators to monitor energy used per unit of water delivered or treated and identify opportunities to improve pumping efficiency. Role-based access supports the management of multiple assets and responsibilities.
The platform is designed for retrofit and new installations across water-supply networks, pumping stations, water treatment plants, sewage treatment plants, irrigation systems, canal-control infrastructure and industrial water facilities. The submission identifies applications in pump-house automation, non-revenue-water analytics, lift-irrigation management, treatment-plant automation, canal-flow control and centralized multi-site operations.
According to the provider, the technology has received technology approval from the Jal Shakti Vibhag, Himachal Pradesh. Supporting documentation was referenced but not supplied for verification.
2. Improves energy efficiency by monitoring pump consumption and energy used per unit of water delivered or treated.
3. Enables remote supervision and control of geographically distributed infrastructure.
4. Reduces manual intervention, unnecessary site visits and avoidable equipment downtime.
5. Provides real-time alerts and historical performance data for operational planning and maintenance.
6. Supports centralized, scalable management of multiple water assets and locations.
7. May reduce indirect greenhouse-gas emissions through lower electricity consumption.
8. Improves operational visibility, accountability and service reliability.
2. Water and sewage treatment plants
3. Pump houses and pumping stations
4. Irrigation and lift-irrigation systems
5. Canal gates and water-control infrastructure
6. Industrial water management
7. Municipal and urban water infrastructure
8. Smart cities and smart water networks
9. Large-scale agriculture and agri-enterprises
10. Multi-site utility operations
Target users include government water and irrigation departments, public water authorities, urban local bodies, smart-city authorities, treatment-plant operators, industrial facilities, Water User Associations and utility-management companies.
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